Title :
Frequency response analysis for DC-DC converters without small-signal linearization
Author :
Ly, Jason H. ; Siri, Kasemsan
Author_Institution :
Electromech. & Control Dept., Aerosp. Corp., El Segundo, CA, USA
Abstract :
Presented herein is a frequency-domain analysis approach using Matlab simulink models via fast Fourier transform (FFT) of DC-DC converter closed-loop systems without small-signal linearization. Two modeling techniques are used: 1) average large-signal model; 2) pulse-by-pulse switching. It is shown that the frequency response result obtained with the Matlab Simulink and PSPICE model using average large-signal technique is comparable. Moreover, contrary to using PSPICE, obtaining frequency response using FFT via the Matlab Simulink model with the pulse-by-pulse switching method is easy and straightforward. The reason is that Matlab can accommodate script files for repetitive simulation data processing, whereas PSPICE cannot. Frequency domain analysis on the dc-dc converter model using the pulse-by-pulse switching technique leads to a more accurate result since all nonlinear elements in the circuit are included. The proposed "software analyzer approach" is demonstrated and validated with a converter power system operating in the solar-array voltage regulation mode.
Keywords :
DC-DC power convertors; closed loop systems; electronic engineering computing; fast Fourier transforms; frequency response; frequency-domain analysis; simulation; solar cell arrays; voltage control; DC-DC converters; FFT; Matlab simulink models; PSPICE model; average large-signal model; closed-loop systems; fast Fourier transform; frequency response analysis; frequency-domain analysis; modeling techniques; nonlinear elements; pulse-by-pulse switching; script files; simulation data processing; small-signal linearization; software analyzer approach; solar-array voltage regulation mode; Circuit simulation; DC-DC power converters; Fast Fourier transforms; Frequency domain analysis; Frequency response; Mathematical model; Power system modeling; Power system simulation; Pulse power systems; SPICE;
Conference_Titel :
Applied Power Electronics Conference and Exposition, 2003. APEC '03. Eighteenth Annual IEEE
Conference_Location :
Miami Beach, FL, USA
Print_ISBN :
0-7803-7768-0
DOI :
10.1109/APEC.2003.1179340